首页> 外文会议>International Conference on Mechanochemistry and Mechanical Alloying >Electric Conductivity of (Bi_(1-x)La_xFeO_3)_(0.5)(PbTiO_3)_(0.5) Ceramics Obtained from Mechanosynthesized Nanopowders
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Electric Conductivity of (Bi_(1-x)La_xFeO_3)_(0.5)(PbTiO_3)_(0.5) Ceramics Obtained from Mechanosynthesized Nanopowders

机译:(Bi_(1-x)LA_XFEO_3)_(0.5)(PBTIO_3)_(0.5)陶瓷从机械合成的纳米粉末获得

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Electric conductivity of (Bi_(1-x)La_xFeO_3)_(0.5)(PbTiO_3)_(0.5) ceramics obtained from nanopowders synthesized by high-energy milling from respective oxides was studied in the frequency range 10 mHz÷1 GHz. At room temperatures the low-frequency conductivity was found to be dominated by the contribution from poor-conducting grain boundaries, whereas the contribution in the range 1 kHz ÷1 MHz, due to the grain interior, was related by us to the small polaron hopping. Moreover, the electron exchange between ferric and ferrous ions activated at higher frequencies was found to be added to the conductivity above ≈ 1 MHz.
机译:在频率范围内的频率范围内,研究了从通过各自的氧化物合成的纳米孔获得的纳米孔获得的(0.5)(PBTIO_3)_(0.5)陶瓷的电导率。频率范围为10MHz÷1GHz。在房间温度下,发现低频电导率是由导电差的晶界的贡献为主,而由于谷物内部,1 kHz÷1MHz的贡献是由我们相关的小型Polageon跳跃。此外,发现在较高频率下活化的铁和铁离子之间的电子交换被添加到≈1MHz的电导率上。

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